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Revealing the Superfluid Lambda Transition in the Universal Thermodynamics of a Unitary Fermi Gas

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arxiv 1110.3309 v1 pith:EYTT557Q submitted 2011-10-14 cond-mat.quant-gas cond-mat.str-el

Revealing the Superfluid Lambda Transition in the Universal Thermodynamics of a Unitary Fermi Gas

classification cond-mat.quant-gas cond-mat.str-el
keywords fermiinteractingstronglysuperfluidtransitioncapacitycompressibilityentropy
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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abstract

We have observed the superfluid phase transition in a strongly interacting Fermi gas via high-precision measurements of the local compressibility, density and pressure down to near-zero entropy. Our data completely determine the universal thermodynamics of strongly interacting fermions without any fit or external thermometer. The onset of superfluidity is observed in the compressibility, the chemical potential, the entropy, and the heat capacity. In particular, the heat capacity displays a characteristic lambda-like feature at the critical temperature of $T_c/T_F = 0.167(13)$. This is the first clear thermodynamic signature of the superfluid transition in a spin-balanced atomic Fermi gas. Our measurements provide a benchmark for many-body theories on strongly interacting fermions, relevant for problems ranging from high-temperature superconductivity to the equation of state of neutron stars.

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Cited by 2 Pith papers

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    Trap-induced corrections to the unitary Fermi gas phonon spectrum and dynamic structure factor are computed in three EFT/WKB regimes, with low-energy corrections depending on trap shape and high-energy corrections set...

  2. Few is different: deciphering many-body dynamics in mesoscopic quantum gases

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    A workshop report mapping the size, equilibrium, and interaction frontiers of hydrodynamic behavior in mesoscopic quantum systems, connecting few-atom Fermi gases and high-energy small collision systems.